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Precise tracking of remote sensing satellites with the Global Positioning System

机译:使用全球定位系统精确跟踪遥感卫星

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The Global Positioning System (GPS) can be applied in a number of ways to track remote sensing satellites at altitudes below 3000 km with accuracies of better than 10 cm. All techniques use a precise global network of GPS ground receivers operating in concert with a receiver aboard the user satellite, and all estimate the user orbit, GPS orbits, and selected ground locations simultaneously. The GPS orbit solutions are always dynamic, relying on the laws of motion, while the user orbit solution can range from purely dynamic to purely kinematic (geometric). Two variations show considerable promise. The first one features an optimal synthesis of dynamics and kinematics in the user solution, while the second introduces a novel gravity model adjustment technique to exploit data from repeat ground tracks. These techniques, to be demonstrated on the TOPEX/Poseidon mission in 1992, will offer subdecimeter tracking accuracy for dynamically unpredictable satellites down to the lowest orbital altitudes.
机译:全球定位系统(GPS)可以以多种方式应用于在3000 km以下的高度中以优于10 cm的精度跟踪遥感卫星。所有技术都使用与用户卫星上的接收器协同工作的GPS地面接收器的精确全球网络,并且所有技术都同时估算用户轨道,GPS轨道和选定的地面位置。 GPS轨道解决方案始终是动态的,取决于运动定律,而用户轨道解决方案的范围可以从纯动态到纯运动(几何)。有两种变体显示出可观的前景。第一个功能是用户解决方案中动力学和运动学的最佳综合,而第二个功能则引入了一种新颖的重力模型调整技术来利用重复地面轨迹的数据。这些技术将在1992年的TOPEX / Poseidon任务中进行演示,它将为低至轨道高度最低的动态不可预测的卫星提供亚分米跟踪精度。

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